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    题名 作者 年代 出处 被引量
1Air and fluid leak tests after NOTES procedures: a pilot study in a live porcine model (with videos)显示文摘Xavier Dray Kathleen L. Gabrielson Jonathan M. Buscaglia Eun Ji Shin Samuel A. Giday Vihar C. Surti Lia Assumpcao Michael R. Marohn Priscilla Magno Laurie J. Pipitone Susan K. Redding Anthony N. Kalloo Sergey V. Kantsevoy 2008Gastrointestinal Endoscopy2008,,3:1
2Methodological and technical issues related to the diagnosis, screening, prevention, and treatment of pre-eclampsia and eclampsia 显示文摘ViHar J Say L Shennan A 2004International Journal of Obstetrics and Gynecology2004,85,1:1
3A new alternative for a transjugular intrahepatic portosystemic shunt: EUS-guided creation of an intrahepatic portosystemic shunt (with video)显示文摘Jonathan M. Buscaglia Xavier Dray Eun Ji Shin Priscilla Magno Kevin M. Chmura Vihar C. Surti Travis E. Dillon Richard W. Ducharme Gianfranco Donatelli Paul J. Thuluvath Samuel A. Giday Sergey V. Kantsevoy 2009Gastrointestinal Endoscopy2009,,4:1
4Erythrocyte sphingolipid species as biomarkers of Alzheimer's disease显示文摘Diagnosing Alzheimer’s disease(AD)in the early stage is challenging.Informative biomarkers can be of great value for population-based screening.Metabolomics studies have been used to find potential biomarkers,but commonly used tissue sources can be difficult to obtain.The objective of this study was to determine the potential utility of erythrocyte metabolite profiles in screening for AD.Unlike some commonly-used sources such as cerebrospinal fluid and brain tissue,erythrocytes are plentiful and easily accessed.Moreover,erythrocytes are metabolically active,a feature that distinguishes this sample source from other bodily fluids like plasma and urine.In this preliminary pilot study,the erythrocyte metabolomes of 10 histopathologically confirmed AD patients and 10 patients without AD(control(CTRL))were compared.Whole blood was collected post-mortem and erythrocytes were analyzed using ultraperformance liquid chromatography tandem mass spectrometry.Over 750 metabolites were identified in AD and CTRL erythrocytes.Seven were increased in AD while 24 were decreased(P<0.05).The majority of the metabolites increased in AD were associated with amino acid metabolism and all of the decreased metabolites were associated with lipid metabolism.Prominent among the potential biomarkers were 10 sphingolipid or sphingolipid-related species that were consistently decreased in AD patients.Sphingolipids have been previously implicated in AD and other neurological conditions.Furthermore,previous studies have shown that erythrocyte sphingolipid concentrations vary widely in normal,healthy adults.Together,these observations suggest that certain erythrocyte lipid phenotypes could be markers of risk for development of AD.Jericha Mill Vihar Patel Ozioma Okonkwo Lingjun Li Thomas Raife 2022Journal of Pharmaceutical Analysis2022,12,1:1
5Efficient spin filtering through cobalt - based extended metal atom chains 显示文摘VIHAR P GEORGIEV JOHN E 2010Inorg Chem2010,49,:1
6Artificial neural network based system identification and model predictive control of a flotation column 显示文摘Acharya Vihar 2009Journal of Process Control2009,19,6:1
7HIGHER EDUCATION IN LIBRARY & INFORMATION SCIENCE IN INDIA 显示文摘Satsang Vihar 2001ILA BULLETIN2001,37,1:1
8Higher education in library and information science in India 显示文摘Satsang Vihar Marg 2001ILA bulletin2001,37,1:1
9Nano-Electronic Simulation Software (NESS): A Novel Open-Source TCAD Simulation Environment显示文摘This paper presents the latest status of the open source advanced TCAD simulator called Nano-Electronic Simulation Software(NESS)which is currently under development at the Device Modeling Group of the University of Glasgow.NESS is designed with the main aim to provide an open,flexible,and easy to use simulation environment where users are able not only to perform numerical simulations but also to develop and implement new simulation methods and models.Currently,NESS is organized into two main components:the structure generator and a collection of different numerical solvers;which are linked to supporting components such as an effective mass extractor and materials database.This paper gives a brief overview of each of the components by describing their main capabilities,structure,and theory behind each one of them.Moreover,to illustrate the capabilities of each component,here we have given examples considering various device structures,architectures,materials,etc.at multiple simulation conditions.We expect that NESS will prove to be a great tool for both conventional as well as exploratory device research programs and projects.Cristina Medina-Bailon Tapas Dutta Fikru Adamu-Lema Ali Rezaei Daniel Nagy Vihar P.Georgiev Asen Asenov 2020Journal of Microelectronic Manufacturing2020,3,4:0
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